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- W3007614793 abstract "Abstract Performing toxicity testing on multiple species with differing degrees of evolutionary relatedness can provide important information on how chemical sensitivity varies among species and can help pinpoint the biological drivers of species sensitivity. Such knowledge could ultimately be used to design better multispecies predictive ecological risk assessment models and identify particularly sensitive species. However, laboratory toxicity tests involving multiple species can also be resource intensive, especially when each species has unique husbandry conditions. We performed lethality tests with 2 metals, copper chloride and zinc chloride, on 5 different nematode species, which are nested in their degree of evolutionary relatedness: Caenorhabditis briggsae , Caenorhabditis elegans , Oscheius myriophila , Oscheius tipulae , and Pristionchus pacificus . All species were successfully cultured and tested concurrently with limited resources, demonstrating that inexpensive, multispecies nematode toxicity testing systems are achievable. The results indicate that P. pacificus is the most sensitive to both metals. Conversely, C. elegans is the least sensitive species to copper, but the second most sensitive to zinc, indicating that species relationships do not necessarily predict species sensitivity. Toxicity testing with additional nematode species and types of chemicals is feasible and will help form more generalizable conclusions about relative species sensitivity. Environ Toxicol Chem 2020;39:1006–1016. © 2020 SETAC" @default.
- W3007614793 created "2020-03-06" @default.
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- W3007614793 date "2020-03-29" @default.
- W3007614793 modified "2023-09-25" @default.
- W3007614793 title "Interspecific Variation in Nematode Responses to Metals" @default.
- W3007614793 cites W1513618424 @default.
- W3007614793 cites W1523196522 @default.
- W3007614793 cites W1533255176 @default.
- W3007614793 cites W1570809811 @default.
- W3007614793 cites W1572224339 @default.
- W3007614793 cites W1588947966 @default.
- W3007614793 cites W179862 @default.
- W3007614793 cites W1949402365 @default.
- W3007614793 cites W1965701630 @default.
- W3007614793 cites W1967888484 @default.
- W3007614793 cites W1971056228 @default.
- W3007614793 cites W1977371368 @default.
- W3007614793 cites W1982278585 @default.
- W3007614793 cites W1986093130 @default.
- W3007614793 cites W1987334587 @default.
- W3007614793 cites W1988547439 @default.
- W3007614793 cites W1990778999 @default.
- W3007614793 cites W1993942531 @default.
- W3007614793 cites W1997647894 @default.
- W3007614793 cites W1997680903 @default.
- W3007614793 cites W1999984322 @default.
- W3007614793 cites W2001589365 @default.
- W3007614793 cites W2002190131 @default.
- W3007614793 cites W2005991299 @default.
- W3007614793 cites W2007378492 @default.
- W3007614793 cites W2010901209 @default.
- W3007614793 cites W2011950998 @default.
- W3007614793 cites W2017458388 @default.
- W3007614793 cites W2021650771 @default.
- W3007614793 cites W2029437697 @default.
- W3007614793 cites W2032719994 @default.
- W3007614793 cites W2038650172 @default.
- W3007614793 cites W2052323148 @default.
- W3007614793 cites W2057923423 @default.
- W3007614793 cites W2061817247 @default.
- W3007614793 cites W2062428438 @default.
- W3007614793 cites W2063088083 @default.
- W3007614793 cites W2066621059 @default.
- W3007614793 cites W2067484587 @default.
- W3007614793 cites W2073349064 @default.
- W3007614793 cites W2073562811 @default.
- W3007614793 cites W2078759814 @default.
- W3007614793 cites W2082350767 @default.
- W3007614793 cites W2085260316 @default.
- W3007614793 cites W2089799301 @default.
- W3007614793 cites W2090415636 @default.
- W3007614793 cites W2090555773 @default.
- W3007614793 cites W2091357784 @default.
- W3007614793 cites W2095225342 @default.
- W3007614793 cites W2096182111 @default.
- W3007614793 cites W2097701742 @default.
- W3007614793 cites W2101005148 @default.
- W3007614793 cites W2102776218 @default.
- W3007614793 cites W2107841285 @default.
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- W3007614793 cites W2117003205 @default.
- W3007614793 cites W2118593127 @default.
- W3007614793 cites W2128016314 @default.
- W3007614793 cites W2130385250 @default.
- W3007614793 cites W2130939625 @default.
- W3007614793 cites W2131008301 @default.
- W3007614793 cites W2133702185 @default.
- W3007614793 cites W2136145671 @default.
- W3007614793 cites W2139208773 @default.
- W3007614793 cites W2157226986 @default.
- W3007614793 cites W2180478016 @default.
- W3007614793 cites W2298472281 @default.
- W3007614793 cites W2325557997 @default.
- W3007614793 cites W2334045433 @default.
- W3007614793 cites W2345942454 @default.
- W3007614793 cites W2491339641 @default.
- W3007614793 cites W2529350482 @default.
- W3007614793 cites W2634242052 @default.
- W3007614793 cites W268821824 @default.
- W3007614793 cites W2802584093 @default.
- W3007614793 cites W2906128478 @default.
- W3007614793 cites W2912761350 @default.
- W3007614793 cites W4230501579 @default.
- W3007614793 cites W4243859336 @default.
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- W3007614793 doi "https://doi.org/10.1002/etc.4689" @default.
- W3007614793 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/32072668" @default.
- W3007614793 hasPublicationYear "2020" @default.
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